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Warm Pre-Strain: Strengthening the Metastable 304L Austenitic Stainless Steel without Compromising Its Hydrogen Embrittlement Resistance

机译:温暖的预应变:在不影响耐氢脆性的情况下增强亚稳304L奥氏体不锈钢

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摘要

Plastic pre-strains were applied to the metastable 304L austenitic stainless steel at both room temperature (20 °C) and higher temperatures (i.e., 50, 80 and 100 °C), and then the hydrogen embrittlement (HE) susceptibility of the steel was evaluated by cathodically hydrogen-charging and tensile testing. The 20 °C pre-strain greatly strengthened the steel, but simultaneously significantly increased the HE susceptibility of the steel, since α′ martensite was induced by the pre-strain, causing the pre-existence of α′ martensite, which provided “highways” for hydrogen to transport deep into the steel during the hydrogen-charging. Although the warm pre-strains did not strengthen the steel as significantly as the 20 °C pre-strain, they retained the HE resistance of the steel. This is because the higher temperatures, particularly 80 and 100 °C, suppressed the α′ martensite transformation during the pre-straining. Pre-strain at a temperature slightly higher than room temperature has a potential to strengthen the metastable 304L austenitic stainless steel without compromising its initial HE resistance.
机译:在室温(20°C)和更高温度(即50、80和100°C)下,将塑料预应变施加到亚稳304L奥氏体不锈钢上,然后钢的氢脆性(HE)敏感性为通过阴极充氢和拉伸测试进行评估。 20°C的预应变极大地增强了钢的强度,但同时显着提高了钢的HE磁化率,因为预应变诱发了α'马氏体,从而导致α'马氏体的存在,从而提供了“高速公路”以便在充氢过程中将氢深入到钢中。尽管温暖的预应变不会像20°C的预应变那样显着增强钢的强度,但它们保留了钢的耐高温性能。这是因为较高的温度,特别是80和100°C,抑制了预应变过程中的α'马氏体相变。在略高于室温的温度下进行预应变可能会增强亚稳态304L奥氏体不锈钢的强度,而不会损害其最初的耐HE性能。

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